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Topology change and tensor forces for the EoS of dense baryonic matter

Title
Topology change and tensor forces for the EoS of dense baryonic matter
Author
이현규
Keywords
NUCLEAR-MATTER; FERMI-LIQUID; BAG; LAGRANGIANS; SYMMETRY; MODEL; QCD
Issue Date
2014-02
Publisher
SPRINGER, 233 SPRING ST, NEW YORK, NY 10013 USA
Citation
The European Physical Journal A February 2014, 50, 14
Abstract
When skyrmions representing nucleons are put on crystal lattice and compressed to simulate high density, there is a transition above the normal nuclear matter density (n(0)) from a matter consisting of skyrmions with integer baryon charge to a state of half-skyrmions with half-integer baryon charge. We exploit this observation in an effective field theory framework to access dense baryonic system. We find that the topology change involved in the transition implies changeover from a Fermi liquid structure to a non-Fermi liquid with the chiral condensate in the "melted-off" nucleon. The similar to 80% of the nucleon mass that remains "unmelted", invariant under chiral transformation, points to the possible origin of the (bulk of) proton mass that is not encoded in the standard mechanism of spontaneously broken chiral symmetry. The topology change engenders a drastic modification of the nuclear tensor forces, thereby non-trivially affecting the EoS, in particular, the symmetry energy, for compact star matter. It brings in stiffening of the EoS needed to accommodate a neutron star of similar to 2 solar mass. The strong effect on the EoS in general and in the tensor force structure in particular will also have impact on processes that could be measured at RIB-type accelerators.
URI
https://link.springer.com/article/10.1140%2Fepja%2Fi2014-14014-1http://hdl.handle.net/20.500.11754/47771
ISSN
1434-6001; 1434-601X
DOI
10.1140/epja/i2014-14014-1
Appears in Collections:
COLLEGE OF NATURAL SCIENCES[S](자연과학대학) > PHYSICS(물리학과) > Articles
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